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An Integrated High-density Linkage Map of Soybean with RFLP, SSR, STS, and AFLP Markers Using A Single F2 Population
Authors:Xia  Zhengjun; Tsubokura  Yasutaka; Hoshi  Masako; Hanawa  Masayoshi; Yano  Chizuru; Okamura  Kayo; Ahmed  Talaat A; Anai  Toyoaki; Watanabe  Satoshi; Hayashi  Masaki; Kawai  Takashi; Hossain  Khwaja G; Masaki  Hirokazu; Asai  Kazumi; Yamanaka  Naoki; Kubo  Nakao; Kadowaki  Koh-ichi; Nagamura  Yoshiaki; Yano  Masahiro; Sasaki  Takuji; Harada    Kyuya
Institution:1 Faculty of Horticulture, Chiba University, 648 Matsudo, Chiba 271-8510, Japan
2 National Institute of Agrobiological Sciences, 2-1-2 Kannondai, Tsukuba, Ibaraki 305-8602, Japan
3 Faculty of Agriculture, Agronomy Department, Assiut University, Assiut 71515, Egypt
4 Faculty of Agriculture, Saga University, Honjo-machi 1, Saga 840-8502, Japan
5 Research Faculty of Agriculture, Hokkaido University, Sapporo, Hokkaido 060-8589, Japan
6 Division of Science and Mathematics, Mayville State University, 330 3rd Street NE, Mayville, ND 58257, USA
7 Japan International Research Center for Agricultural Sciences, 1-1 Ohwashi, Tsukuba, Ibaraki 305-8686, Japan
Abstract:Soybean Glycine max (L.) Merrill] is the most important leguminouscrop in the world due to its high contents of high-quality proteinand oil for human and animal consumption as well as for industrialuses. An accurate and saturated genetic linkage map of soybeanis an essential tool for studies on modern soybean genomics.In order to update the linkage map of a F2 population derivedfrom a cross between Misuzudaizu and Moshidou Gong 503 and tomake it more informative and useful to the soybean genome researchcommunity, a total of 318 AFLP, 121 SSR, 108 RFLP, and 126 STSmarkers were newly developed and integrated into the frameworkof the previously described linkage map. The updated geneticmap is composed of 509 RFLP, 318 SSR, 318 AFLP, 97 AFLP-derivedSTS, 29 BAC-end or EST-derived STS, 1 RAPD, and five morphologicalmarkers, covering a map distance of 3080 cM (Kosambi function)in 20 linkage groups (LGs). To our knowledge, this is presentlythe densest linkage map developed from a single F2 populationin soybean. The average intermarker distance was reduced to2.41 from 5.78 cM in the earlier version of the linkage map.Most SSR and RFLP markers were relatively evenly distributedamong different LGs in contrast to the moderately clusteredAFLP markers. The number of gaps of more than 25 cM was reducedto 6 from 19 in the earlier version of the linkage map. Thecoverage of the linkage map was extended since 17 markers weremapped beyond the distal ends of the previous linkage map. Inparticular, 17 markers were tagged in a 5.7 cM interval betweenCE47M5a and Satt100 on LG C2, where several important QTLs wereclustered. This newly updated soybean linkage map will enableto streamline positional cloning of agronomically importanttrait locus genes, and promote the development of physical maps,genome sequencing, and other genomic research activities.
Keywords:soybean  linkage map  SSR  RFLP  AFLP  STS
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